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Influence of Formulation Parameters on Redispersibility of Naproxen Nanoparticles from Granules Produced in a Fluidized Bed Process

The particle size reduction of active pharmaceutical ingredients is an efficient method to overcome challenges associated with a poor aqueous solubility. With respect to stability and patient’s convenience, the corresponding nanosuspensions are often further processed to solid dosage forms. In this...

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Autores principales: Wewers, Martin, Czyz, Stefan, Finke, Jan Henrik, John, Edgar, Van Eerdenbrugh, Bernard, Juhnke, Michael, Bunjes, Heike, Kwade, Arno
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7238015/
https://www.ncbi.nlm.nih.gov/pubmed/32316108
http://dx.doi.org/10.3390/pharmaceutics12040363
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author Wewers, Martin
Czyz, Stefan
Finke, Jan Henrik
John, Edgar
Van Eerdenbrugh, Bernard
Juhnke, Michael
Bunjes, Heike
Kwade, Arno
author_facet Wewers, Martin
Czyz, Stefan
Finke, Jan Henrik
John, Edgar
Van Eerdenbrugh, Bernard
Juhnke, Michael
Bunjes, Heike
Kwade, Arno
author_sort Wewers, Martin
collection PubMed
description The particle size reduction of active pharmaceutical ingredients is an efficient method to overcome challenges associated with a poor aqueous solubility. With respect to stability and patient’s convenience, the corresponding nanosuspensions are often further processed to solid dosage forms. In this regard, the influence of several formulation parameters (i.e., type of carrier material, type and amount of additional polymeric drying excipient in the nanosuspension) on the redispersibility of naproxen nanoparticle-loaded granules produced in a fluidized bed process was investigated. The dissolution rate of the carrier material (i.e., sucrose, mannitol, or lactose) was identified as a relevant material property, with higher dissolution rates (sucrose > mannitol > lactose) resulting in better redispersibility of the products. Additionally, the redispersibility of the product granules was observed to improve with increasing amounts of polymeric drying excipient in the nanosuspension. The redispersibility was observed to qualitatively correlate with the degree of nanoparticle embedding on the surface of the corresponding granules. This embedding was assumed to be either caused by a partial dissolution and subsequent resolidification of the carrier surface dependent on the dissolution rate of the carrier material or by resolidification of the dissolved polymeric drying excipient upon drying. As the correlation between the redispersibility and the morphology of the corresponding granules was observed for all investigated formulation parameters, it may be assumed that the redispersibility of the nanoparticles is determined by their distance in the dried state.
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spelling pubmed-72380152020-05-28 Influence of Formulation Parameters on Redispersibility of Naproxen Nanoparticles from Granules Produced in a Fluidized Bed Process Wewers, Martin Czyz, Stefan Finke, Jan Henrik John, Edgar Van Eerdenbrugh, Bernard Juhnke, Michael Bunjes, Heike Kwade, Arno Pharmaceutics Article The particle size reduction of active pharmaceutical ingredients is an efficient method to overcome challenges associated with a poor aqueous solubility. With respect to stability and patient’s convenience, the corresponding nanosuspensions are often further processed to solid dosage forms. In this regard, the influence of several formulation parameters (i.e., type of carrier material, type and amount of additional polymeric drying excipient in the nanosuspension) on the redispersibility of naproxen nanoparticle-loaded granules produced in a fluidized bed process was investigated. The dissolution rate of the carrier material (i.e., sucrose, mannitol, or lactose) was identified as a relevant material property, with higher dissolution rates (sucrose > mannitol > lactose) resulting in better redispersibility of the products. Additionally, the redispersibility of the product granules was observed to improve with increasing amounts of polymeric drying excipient in the nanosuspension. The redispersibility was observed to qualitatively correlate with the degree of nanoparticle embedding on the surface of the corresponding granules. This embedding was assumed to be either caused by a partial dissolution and subsequent resolidification of the carrier surface dependent on the dissolution rate of the carrier material or by resolidification of the dissolved polymeric drying excipient upon drying. As the correlation between the redispersibility and the morphology of the corresponding granules was observed for all investigated formulation parameters, it may be assumed that the redispersibility of the nanoparticles is determined by their distance in the dried state. MDPI 2020-04-16 /pmc/articles/PMC7238015/ /pubmed/32316108 http://dx.doi.org/10.3390/pharmaceutics12040363 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wewers, Martin
Czyz, Stefan
Finke, Jan Henrik
John, Edgar
Van Eerdenbrugh, Bernard
Juhnke, Michael
Bunjes, Heike
Kwade, Arno
Influence of Formulation Parameters on Redispersibility of Naproxen Nanoparticles from Granules Produced in a Fluidized Bed Process
title Influence of Formulation Parameters on Redispersibility of Naproxen Nanoparticles from Granules Produced in a Fluidized Bed Process
title_full Influence of Formulation Parameters on Redispersibility of Naproxen Nanoparticles from Granules Produced in a Fluidized Bed Process
title_fullStr Influence of Formulation Parameters on Redispersibility of Naproxen Nanoparticles from Granules Produced in a Fluidized Bed Process
title_full_unstemmed Influence of Formulation Parameters on Redispersibility of Naproxen Nanoparticles from Granules Produced in a Fluidized Bed Process
title_short Influence of Formulation Parameters on Redispersibility of Naproxen Nanoparticles from Granules Produced in a Fluidized Bed Process
title_sort influence of formulation parameters on redispersibility of naproxen nanoparticles from granules produced in a fluidized bed process
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7238015/
https://www.ncbi.nlm.nih.gov/pubmed/32316108
http://dx.doi.org/10.3390/pharmaceutics12040363
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